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鱼类Ⅱ型抗冻蛋白-冰-水复合体系的理论模拟研究
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作者 刘恺 谭宏伟 +1 位作者 陈光巨 佟振合 《北京师范大学学报(自然科学版)》 CAS CSCD 北大核心 2006年第1期74-77,共4页
对鱼类Ⅱ型抗冻蛋白冰晶组成的复合体系在真空条件下进行理论模拟计算的基础上,构建出鱼类Ⅱ型抗冻蛋白冰溶剂(水)的三元复合体系.经过350 ps的动态模拟,研究了溶剂化效应对蛋白冰相互作用体系的影响.通过分子力学及半经验量子力学的计... 对鱼类Ⅱ型抗冻蛋白冰晶组成的复合体系在真空条件下进行理论模拟计算的基础上,构建出鱼类Ⅱ型抗冻蛋白冰溶剂(水)的三元复合体系.经过350 ps的动态模拟,研究了溶剂化效应对蛋白冰相互作用体系的影响.通过分子力学及半经验量子力学的计算,进一步研究蛋白与冰晶的相互作用性质,结果表明溶剂化效应具有不容被忽视的重要作用. 展开更多
关键词 鱼类Ⅱ型抗冻蛋白-冰-水复合体系 理论动态模拟 溶剂化效应
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Theoretical design and dynamic simulation of new mining paths of tracked miner on deep seafloor 被引量:7
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作者 戴瑜 刘少军 《Journal of Central South University》 SCIE EI CAS 2013年第4期918-923,共6页
With comprehensive considerations of the operational safety and collection efficiency for the tracked miner collecting the seafloor poly-metallic nodules, two new improved mining paths for the miner on the deep seaflo... With comprehensive considerations of the operational safety and collection efficiency for the tracked miner collecting the seafloor poly-metallic nodules, two new improved mining paths for the miner on the deep seafloor were proposed. Compared to the conventional mining path, the design principles and superiorities of the two new paths are that the miner turning with relative long radius should avoid large sinkage and high slip, so as to ensure its operational safety, while the space between its straight-line trajectories before and after the turning is optimum, which is designed as the total width of the miner, and collect nodules as more as possible, so as to ensure its collection efficiency. To realize the new mining paths, theoretical designs and quantitative calculations were carried out to determine the exact positions for the speed controls of the miner during its whole operation process. With the new dynamic model of the miner, and through regulations of the speeds of the left and right tracks of the miner on the exact motion positions according to the theoretical calculations, the two new improved mining paths for the miner on the seafloor were successfully simulated, thus the turning radius of the miner in the simulation is about 21.8 m, while the distance between the straight-line trajectories before and after the turning is about 5.2 m. The dynamic simulation results preliminarily prove the feasibility of these two new mining paths, and further can provide important theoretical guidance and useful technical reference for the practical tracked miner operation and control on the seafloor. 展开更多
关键词 deep ocean mining tracked miner single-body model mesh element model collection efficiency mining path dynamic simulation
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